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Ostwald ripening of confined nanoparticles: chemomechanical coupling in nanopores

机译:奥斯特瓦尔德成熟在纳米粒子:chemomechanical耦合在纳米孔

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摘要

Ostwald ripening is a major source of deactivation of functional nanomaterials. It consists in the growth of large nanoparticles at the expense of smaller ones via the formation and decomposition of intermediate chemical species. In most materials of practical interest nanoparticles are dispersed in porous supports with which they interact mechanically. We analyze the consequences of this chemo-mechanical coupling on both kinetic and equilibrium aspects of Ostwald ripening. We show that the long-term stability of a collection of confined nanoparticles depends on nucleation-like events, whereby few particles break through the pore walls early in the process and later grow at the expense of all other particles. This notably explains why the stability of confined nanoparticles depends critically on their initial size distribution; it also provides an explanation for the occasional observation of bimodal particle size distributions in aged materials.
机译:奥斯特瓦尔德成熟是失活的主要来源功能纳米材料。生长大的纳米颗粒为代价的通过形成和较小的分解中间化学物种。纳米颗粒材料的实际利益分散在多孔支持他们机械地进行交互。这chemo-mechanical耦合的结果奥斯特瓦尔德的动力学和平衡方面成熟。限制取决于纳米粒子的集合nucleation-like事件,一些粒子在这个过程中突破早期孔隙壁后来成长为代价的粒子。在纳米粒子的稳定性取决于批判他们的初始大小分布;对于偶尔还提供了一个解释观察双峰粒径在年龄分布的材料。

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